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Mapping of Fuel Anti-Knock Requirements for a Small Remotely Piloted Aircraft Engine

机译:用于小型遥控飞机发动机的燃油防爆要求的映射

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Small remotely piloted aircraft (10-25 kg) powered by internal combustion engines typically operate on motor gasoline, which has an anti-knock index (AKI) of >80. To comply with the single-battlefield-fuel initiative in DoD Directive 4140.25, interest has been increasing in converting the 1-10 kW power plants in the aforementioned size class to run on lower AKI fuels such as diesel and JP-8, which have AKIs of ~20. It has been speculated that the higher losses (short circuiting, incomplete combustion, heat transfer) that cause these engines to have lower efficiencies than their conventional-scale counterparts may also relax the fuel-AKI requirements of the engines. To investigate that idea, the fuel-AKI requirement of a 3W-55i engine was mapped and compared to that of the engine on the manufacturer-recommended 98 (octane number) ON fuel. The knock limit was established to be a peak-pressure rise rate of 5 bar/deg or a maximum amplitude of pressure oscillations of 5 bar for 1% of 400 consecutive cycles, whichever was more conservative. The 3W-55i engine was able to develop full power at all speeds above 6000 rpm (which included the peak power of 5 kW between 6500 and 7000 rpm) running on a 20 ON (primary reference fuel) PRF blend. Below 6000 rpm engine performance was knock-limited on the 20 ON PRF blend, resulting in up to a 30% decrease in power at some operating points. The results validate the speculation that losses in small engines can permit a direct conversion to low-AKI fuel, with minimal impact on engine performance.
机译:由内燃机提供动力的小型远程驾驶飞机(10-25千克)通常在电动机汽油上运行,其具有> 80的抗敲击指数(AKI)。为了遵守国防部指令4140.25中的单战野燃料计划,利息已经在转换了上述尺寸类中的1-10千瓦发电厂,以在柴油和JP-8等下均衡的燃料上运行,这些燃料具有Akis 〜20。已经推测推测导致这些发动机具有比传统级别的效率更低的损失(短路,不完全燃烧,传热)可能还会放宽发动机的燃料AKI要求。为了调查该想法,将3W-55i发动机的燃料-AKI要求映射并与发动机上的发动机上的发动机上的燃料上的发动机相比。建立爆震限制为5巴/°的峰值上升速率或5巴的最大压力振荡幅度为400个连续循环的1%,以至于更保守的。 3W-55i发动机能够以高于6000rpm的所有速度(其中包括在6500和7000 rpm之间的峰值功率的峰值功率)在20 on(主要参考燃料)PRF混合物上运行。低于6000 rpm发动机性能在PRF混合的20上被敲击限制,导致某些操作点的功率降低至多30%。结果验证了小型发动机损失的猜测可以允许直接转换为低氧化燃料,对发动机性能的影响最小。

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